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Cellphone Camera Imaging of a Periodically Patterned Chip as a Potential Method for Point-of-Care Diagnostics

机译:手机摄像头成像的定期图案化芯片作为即时诊断的潜在方法

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In this study, we demonstrate that a disposable chip periodically patterned with suitable ligands, an ordinary cellphone camera, and a simple pattern recognition software, can potentially be used for quantitative diagnostics. A key factor in this demonstration is the design of a calibration grid around the chip that, through a contrast transfer process, enables reliable analysis of the images collected under variable ambient lighting conditions. After exposure to a dispersion of amine terminated silica beads used as analyte mimicking pathogens, an epoxy-terminated glass substrate microcontact printed with octadecyltrichlorosilane (250 μm periodicity) developed a characteristic pattern of beads which could be easily imaged with a cellphone camera of 3.2 MP pixels. A simple pattern recognition algorithm using fast Fourier transform produced a quantitative estimate of the analyte concentration present in the test solution. In this method importantly, neither the chip fabrication process nor the fill-factor of the periodic pattern need be perfect to arrive at a conclusive diagnosis. The method suggests a viable platform that may potentially find use in fault-tolerant and robust point-of-care diagnostic applications.
机译:在这项研究中,我们证明了用合适的配体周期性地图案化的一次性芯片,普通的手机相机和简单的图案识别软件可以潜在地用于定量诊断。该演示中的一个关键因素是芯片周围的校准网格的设计,该校准网格通过对比传输过程能够可靠地分析在可变的环境光照条件下收集的图像。在暴露于胺封端的二氧化硅微珠分散体(用作模仿病原体的分析物)后,用十八烷基三氯硅烷(周期为250μm)印刷的环氧封端的玻璃基板微接触形成了微珠的特征图案,可以轻松地用3.2 MP像素的手机相机成像。使用快速傅里叶变换的简单模式识别算法可对测试溶液中存在的分析物浓度进行定量估计。重要的是,在该方法中,芯片制造过程或周期性图案的填充因子都不需要完美地得出结论性的诊断。该方法提出了一个可行的平台,该平台可能会在容错和强大的即时医疗诊断应用程序中找到用途。

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